Claims
- 1. A method for forming an image which comprises heating, in the presence of water, a combination of (i) a light-sensitive element having been exposed to light comprising a support having provided thereon at least one layer containing a light-sensitive silver halide, a binder, a dye providing substance, and a slightly water soluble metal compound capable of generating a base upon reacting with a complex-forming compound in the presence of water; and (ii) a dye fixing element comprising a mordant capable of fixing a mobile dye formed in said light-sensitive element and said complex-forming compound capable of undergoing a complex-forming reaction with a metal ion of said slightly water soluble metal compound, wherein said dye fixing element further contains oil droplets and a latex comprising a polymer having a glass transition point of 40.degree. C. or less, provided that said oil droplets are present in at least one hydrophilic colloid layer other than the uppermost layer of said dye fixing element and said latex is present in a hydrophilic colloid layer positioned on or above a layer containing said mordant.
- 2. A method for forming an image as in claim 1, wherein said dye fixing element comprises at least two hydrophilic colloid layers in which one of said hydrophilic colloid layers is a mordanting layer containing a mordant.
- 3. A method for forming an image as in claim 1, wherein said oil droplets have an average particle diameter of not more than 3 micrometers.
- 4. A method for forming an image as in claim 3, wherein said oil droplets have an average particle diameter of not more than 1 micrometer.
- 5. A method for forming an image as in claim 4, wherein said oil droplets have an average particle diameter of not more than 0.5 micrometer.
- 6. A method for forming an image as in claim 1, wherein the amount of said oil droplets is in the range of from 5 to 60 vol % based on the total amount of the polymer components in the layer to which said oil droplets are added.
- 7. A method for forming an image as in claim 6, wherein the amount of said oil droplets is in the range of from 10 to 50 vol % based on the total amount of the polymer components in the layer to which said oil droplets are added.
- 8. A method for forming an image as in claim 7, wherein the amount of said oil droplets is in the range of from 20 to 40 vol % based on the total amount of the polymer components in the layer to which said oil droplets are added.
- 9. A method for forming an image as in claim 1, wherein said oil droplets comprise a substituted or unsubstituted saturated or unsaturated hydrocarbon compound containing at least 10 carbon atoms or a compound represented by formula (A), (B), (C), (D), (E), (F), or (G) ##STR42## wherein R.sub.A represents a substituted or unsubstituted aliphatic hydrocarbon group having a valency of m+n, R.sup.1 represents a substituted or unsubstituted aliphatic, alicyclic, or aromatic hydrocarbon group, and m and n each represent an integer of from 1 to 5; ##STR43## wherein R.sub.B represents a substituted or unsubstituted aliphatic or alicyclic hydrocarbon group having a valency of p+q; R.sup.2 and R.sup.3 each represents a substituted or unsubstituted aliphatic or alicyclic hydrocarbon group; p represents 0, 1, 2, or 3; and q represents 0, 1, 2, or 3, provided that p+q represents 1 or more; ##STR44## wherein R.sub.C represents a hydrogen atom, or a substituted or unsubstituted aliphatic hydrocarbon, alicyclic hydrocarbon, aromatic hydrocarbon, acyl, amino, acyloxy, carbamoyl, ureido, alkoxycarbonyl, aryloxycarbonyl, or cycloalkyloxycarbonyl group, or a halogen atom, a hydroxyl group, a carboxyl group, a nitro group, or a cyano group; R.sup.4 represents a substituted or unsubstituted aliphatic, alicyclic, or aromatic hydrocarbon group; r represents an integer of from 1 to 5; s represents an integer of from 1 to 4, provided that r+s represents an integer of 6 or less; when r is 2 or more, the R.sub.C groups are the same or different, and when s is 2 or more, the R.sup.4 groups are the same or different; ##STR45## wherein R.sup.5 and R.sup.6 each represent a substituted or unsubstituted alkyl, monocyclic or polycyclic alicyclic hydrocarbon, aryl, or aralkyl group; R.sup.7 represents a substituted or unsubstituted alkyl, aryl, aralkyl, or amino group, or a halogen atom; Z represents an atomic group forming a carbon ring condensed with the benzene ring; l represents 0 or 1; v represents an integer of from 0 to 2; and w represents an integer of from 0 to 7, provided that v+w represent an integer of 7 or less, in which at least one of R.sup.6 O and R.sup.7 is substituted in at least one of the benzene ring and a carbocyclic ring condensed with the benzene ring;
- (R.sup.8 --O).sub.3 P.dbd.O (E)
- wherein each R.sup.8 represents a substituted or unsubstituted alkyl, cycloalkyl, alkenyl, or aryl group; ##STR46## wherein R.sup.9 represents a hydrogen atom, or a substituted or unsubstituted aliphatic hydrocarbon group having a valency of n'; R.sup.10 and R.sup.11 are the same or different and each represent a hydrogen atom, or a substituted or unsubstituted aliphatic or aromatic hydrocarbon group; and n' represents 1 or 2, or R.sup.9 and R.sup.10, and R.sup.10 and R.sup.11 together form a heterocyclic ring
- R.sub.G --COO--R.sup.12 (G)
- wherein R.sub.G represents a substituted or unsubstituted aliphatic hydrocarbon group; and R.sup.12 represents a substituted or unsubstituted aliphatic, alicyclic, or aromatic hydrocarbon group.
- 10. A method for forming an image as in claim 9, wherein said oil droplets comprise a saturated hydrocarbon compound which is partially or wholly substituted with a chlorine atom, or a phosphate type high boiling point organic solvent represented by formula (E)
- (R.sup.8 --O).sub.3 P.dbd.O (E)
- wherein each R.sup.8 represents a substituted or unsubstituted alkyl, cycloalkyl, alkenyl, or aryl group.
- 11. A method for forming an image as in claim 1, wherein said latex comprising a polymer having a glass transition point of 40.degree. C. or less is a latex of a polymer of an acrylic acid ester, a latex of a copolymer of an acrylic acid ester and a methacrylic acid ester, or a latex of a copolymer of an acrylic acid ester and an acrylic or methacrylic acid.
- 12. A method for forming an image as in claim 1, wherein said latex comprises a polymer having a glass transition point of 20.degree. C. or less.
- 13. A method for forming an image as in claim 2, wherein the amount of the polymer contained in said latex is in the range of from 5 to 200 vol % based on the total amount of the hydrophilic binder contained in the layer to which said latex is added.
- 14. A method for forming an image as in claim 13, wherein the amount of the polymer contained in said latex is in the, range of from 10 to 100 vol % based on the total amount of the hydrophilic binder contained in the layer to which said latex is added.
- 15. A method for forming an image as in claim 1, wherein the coated amount of the polymer contained in said latex is in the range of from 1 mg/m.sup.2 to 5 g/m.sup.2.
- 16. A method for forming an image as in claim 15, wherein the coated amount of the polymer contained in said latex is in the range of from 10 mg/m.sup.2 to 2 g/m.sup.2.
- 17. A method for forming an image as in claim 1, wherein said latex is contained in a layer adjacent to the mordanting layer containing said mordant.
- 18. A method for forming an image as in claim 1, wherein said mordant is a polymer containing a vinyl monomer unit represented by formula (I) ##STR47## wherein R.sub.13 represents a hydrogen atom or a lower alkyl group having from 1 to 6 carbon atoms; L represents a divalent linking group having from 1 to about 20 carbon atoms; E represents an imidazole ring; and n represents 0 or 1.
- 19. A method for forming an image as in claim 1, wherein a layer containing said latex is provided above a layer containing said oil droplets.
- 20. A method for forming an image as in claim 1, wherein said slightly water soluble metal compound is selected from the group consisting of zinc carbonate, zinc hydroxide, zinc oxide, aluminum carbonate, aluminum hydroxide, aluminum oxide, calcium carbonate, calcium hydroxide, calcium oxide, barium carbonate, barium hydroxide and barium oxide.
- 21. A method for forming an image as in claim 1, wherein said complex-forming compound is a salt of a compound selected from the group consisting of aminocarboxylic acids, iminodiacetic acids, pyridylcarboxylic acids, aminophosphoric acids, carboxylic acids, hydroxamic acids, polyacrylates, polyphosphoric acids, alkali metals, guanidines, amidines, and quaternary ammonium compounds.
- 22. A method for forming an image as in claim 1, wherein the molar ratio of the complex-forming compound to the slightly water soluble compound is in the range of from 1/100 to 100/1.
- 23. A method for forming an image as in claim 22, wherein said molar ratio is from 1/10 to 20/1.
- 24. A method for forming an image as in claim 1, wherein said slightly water soluble compound is present in an amount of up to 50 wt % on the weight of the coated layer in which it is present.
- 25. A method for forming an image as in claim 1, wherein said complex-forming compound is prsent in an amount of up to 50 wt % based on the weight of the coated layer in which it is present.
- 26. A method for forming an image as in claim 24, wherein said amount is from 0.01 to 40 wt %.
- 27. A method for forming an image as in claim 25, wherein said amount is from 0.01 to 40 wt %.
- 28. A method for forming an image which comprises heating, in the presence of water, a combination of (i) a light sensitive element having been exposed to light comprising a support having provided thereon at least one layer containing a light-sensitive silver halide, a binder, a dye providing substance, and a slightly water soluble metal compound capable of generating a base upon reacting with a complex-forming compound in the presence of water; and (ii) a dye fixing element comprising a mordant capable of fixing a mobile dye formed in said light-sensitive element and said complex forming compound capable of undergoing a complex-forming reaction with a metal ion of said slightly water soluble metal compound, wherein said dye fixing element further contains oil droplets present in at least one hydrophilic colloid layer other than the uppermost layer of said dye fixing element.
- 29. A method for forming an image which comprises heating, in the presence of water, a combination of (i) a light-sensitive element having been exposed to light comprising a support having provided thereon at least one layer containing a light-sensitive silver halide, a binder, a dye providing substance, and a slightly water soluble metal compound capable of generating a base upon reacting with a complex-forming compound in the presence of water; and (ii) a dye fixing element comprising a mordant capable of fixing a mobile dye formed in said light-sensitive element and said complex-forming compound capable of undergoing a complex-forming reaction with a metal ion of said slightly water soluble metal compound, wherein said dye fixing element further contains a latex comprising a polymer having a glass transition point of 40.degree. C. or less.
- 30. A method for forming an image as in claim 28, wherein said oil droplets have an average particle diameter of not more than 1 micrometer.
- 31. A method for forming an image as in claim 28, wherein the amount of said oil droplets is in the range of from 10 to 50 vol % based on the total amount of the polymer components in the layer to which said oil droplets are added.
- 32. A method for forming an image as in claim 28, wherein said oil droplets comprise a substituted or unsubstituted saturated or unsaturated hydrocarbon compound containing at least 10 carbon atoms or a compound represented by formula (A), (B), (C), (D), (E), (F), or (G) ##STR48## wherein R.sub.A represents a substituted or unsubstituted aliphatic hydrocarbon group having a valency of m+n, R.sup.1 represents a substituted or unsubstituted aliphatic, alicyclic, or aromatic hydrocarbon group, and m and n each represent an integer of from 1 to 5; ##STR49## wherein R.sub.B represents a substituted or unsubstituted aliphatic or alicyclic hydrocarbon group having a valency of p+q; R.sup.2 and R.sup.3 each represents a substituted or unsubstituted aliphatic or alicyclic hydrocarbon group; p represents 0, 1, 2, or 3; and q represents 0, 1, 2, or 3, provided that p+q represents 1 or more; ##STR50## wherein R.sub.C represents a hydrogen atom, or a substituted or unsubstituted aliphatic hydrocarbon, alicyclic hydrocarbon, aromatic hydrocarbon, acyl, amino, acyloxy, carbamoyl, ureido, alkoxycarbonyl, aryloxycarbonyl, or cycloalkyloxycarbonyl group, or a halogen atom, a hydroxyl group, a carboxyl group, a nitro group, or a cyano group; R.sup.4 represents a substituted or unsubstituted aliphatic, alicyclic, or aromatic hydrocarbon group, r represents an integer of from 1 to 5; s represents an integer of from 1 to 4, provided that r+s represents an integer of 6 or less, when r is 2 or more, the R.sub.C groups are the same or different, and when s is 2 or more, the R.sup.4 groups are the same or different; ##STR51## wherein R.sup.5 and R.sup.6 each represent a substituted or unsubstituted alkyl, monocyclic or polycyclic alicyclic hydrocarbon, aryl, or aralkyl group; R.sup.7 represents a substituted or unsubstituted alkyl, aryl, aralkyl, or amino group, or a halogen atom; Z represents an atomic group forming a carbon ring condensed with the benzene ring; l represents 0 or 1; v represents an integer of from 0 to 2; and w represents an integer of from 0 to 7, provided that v+w represent an integer of 7 or less, in which at least one of R.sup.6 O and R.sup.7 is substituted in at least one of the benzene ring and a carbocyclic ring condensed with the benzene ring:
- (R.sup.8 --O).sub.3 P.dbd.O (E)
- wherein each R.sup.8 represents a substituted or unsubstituted alkyl, cycloalkyl, alkenyl, or aryl group; ##STR52## wherein R.sup.9 represents a hydrogen atom, or a substituted or unsubstituted aliphatic hydrocarbon group having a valency of n'; R.sup.10 and R.sup.11 are the same or different and each represent a hydrogen atom, or a substituted or unsubstituted aliphatic or aromatic hydrocarbon group; and n' represents 1 or 2, or R.sup.9 and R.sup.10, and R.sup.10 and R.sup.11 together form a heterocyclic ring
- R.sub.G --COO--R.sup.12 (G)
- wherein R.sub.G represents a substituted or unsubstituted aliphatic hydrocarbon group; and R.sup.12 represents a substituted or unsubstituted aliphatic, alicyclic, or aromatic hydrocarbon group.
- 33. A method for forming an image as in claim 32, wherein said oil droplets comprise a saturated hydrocarbon compound which is particularly or wholly substituted with a chlorine atom, or a phosphate type high boiling point organic solvent represented by formula (E)
- (R.sup.8 --O).sub.3 P.dbd.O (E)
- wherein each R.sup.8 represents a substituted or unsubstituted alkyl, cycloalkyl, alkenyl, or aryl group.
- 34. A method for forming an image as in claim 28, wherein said mordant is a polymer containing a vinyl monomer unit represented by formula (I) ##STR53## wherein R.sub.13 represents a hydrogen atom or a lower alkyl group having from 1 to 6 carbon atoms, L represents a divalent linking group having from 1 to about 20 carbon atoms; E represents an imidazole ring; and n represents 0 or 1.
- 35. A method for forming an image as in claim 28, wherein said slightly water soluble metal compound is selected from the group consisting of zinc carbonate, zinc hydroxide, zinc oxide, aluminum carbonate, aluminum hydroxide, aluminum oxide, calcium carbonate, calcium hydroxide, calcium oxide, barium carbonate, barium hydroxide and barium oxide.
- 36. A method for forming an image as in claim 28, wherein said complex-forming compound is a salt of a compound selected from the group consisting of aminocarboxylic acids, iminodiacetic acids, pyridylcarboxylic acids, aminophosphoric acids, carboxylic acids, hydroxamic acids, polyacrylates, polyphosphoric acids, alkali metals, guanidines, amidines, and quaternary ammonium compounds.
- 37. A method for forming an image as in claim 28, wherein the molar ratio of the complex-forming compound to the slightly water soluble compound is in the range of from 1/100 to 100/1.
- 38. A method for forming an image as in claim 37, wherein said molar ratio is from 1/10 to 20/1.
- 39. A method for forming an image as in claim 28, wherein said slightly water soluble compound is present in an amount of up to 50 wt % based on the weight of the coated layer in which it is present.
- 40. A method for forming an image as in claim 28, wherein said complex-forming compound is present in an amount of up to 50 wt % based on the weight of the coated layer in which it is present.
- 41. A method for forming an image as in claim 29, wherein said latex comprising a polymer having a glass transition point of 40.degree. C. or less is a latex of a polymer of an acrylic acid ester, a latex of a copolymer of an acrylic acid ester and a methacrylic acid ester, or a latex of a copolymer of an acrylic acid ester and an acrylic or methacrylic acid.
- 42. A method for forming an image as in claim 29, wherein said latex comprises a polymer having a glass transition point of 20.degree. C. or less.
- 43. A method for forming an image as in claim 29, wherein the amount of the polymer contained in said latex is in the range of from 5 to 200 vol % based on the total amount of the hydrophilic binder contained in the layer to which said latex is added.
- 44. A method for forming an image as in claim 43, wherein the amount of the polymer contained in said latex is in the range of from 10 to 100 vol % based on the total amount of the hydrophilic binder contained in the layer to which said latex is added.
- 45. A method for forming an image as in claim 29, wherein said coated amount of the polymer contained in said latex is in the range of from 1 mg/m.sup.2 to 5 g/m.sup.2.
- 46. A method for forming an image as in claim 29, wherein said mordant is a polymer containing a vinyl monomer unit represented by formula (I) ##STR54## wherein R.sub.13 represents a hydrogen atom or a lower alkyl group having from 1 to 6 carbon atoms; L represents a divalent linking group having from 1 to about 20 carbon atoms; E represents an imidazole ring; and n represents 0 to 1.
- 47. A method for forming an image as in claim 29, wherein said slightly water soluble metal compound is selected from the group consisting of zinc carbonate, zinc hydroxide, zinc oxide, aluminum carbonate, aluminum hydroxide, aluminum oxide, calcium carbonate, calcium hydroxide, calcium oxide, barium carbonate, barium hydroxide and barium oxide.
- 48. A method for forming an image as in claim 29, wherein said complex-forming compound is a salt of a compound selected from the group consisting of aminocarboxylic acids, iminodiacetic acids, pyridylcarboxylic acids, aminophosphoric acids, carboxylic acids, hydroxamic acids, polyacrylates, polyphosphoric acids, alkali metals, guanidines, amidines, and quaternary ammonium compounds.
- 49. A method for forming an image as in claim 29, wherein the molar ratio of the complex-forming compound to the slightly water soluble compound is in the range of from 1/100 to 100/1.
- 50. A method for forming an image as in claim 49, wherein said molar ratio is from 1/10 to 20/1.
- 51. A method for forming an image as in claim 29, wherein said slightly water soluble compound is present in an amount of up to 50 wt % based on the weight of the coated layer in which it is present.
- 52. A method for forming an image as in claim 29, wherein said complex-forming compound is present in an amount of up to 50 wt % based on the weight of the coated layer in which it is present.
Priority Claims (3)
Number |
Date |
Country |
Kind |
61-88258 |
Apr 1986 |
JPX |
|
61-88259 |
Apr 1986 |
JPX |
|
61-89508 |
Apr 1986 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 07/039,546 filed Apr. 17, 1987, now abandoned.
US Referenced Citations (7)
Non-Patent Literature Citations (1)
Entry |
"Photographic Applications of Latices" Research Disclosure No. 19551, Jul. 1980, pp. 301-310. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
39546 |
Apr 1987 |
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